Solar hanging lamp
By designing a solar-powered hanging light with multiple luminous decorative parts connected in series, the problems of monotonous structure and high power consumption of existing solar decorative lights are solved. This achieves a decorative effect with good aesthetics, strong visual appeal, and multi-angle color changes, making it suitable for places such as parasols and outdoor awnings.
Patent Information
- Application Number
- CN202422709523.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-06
- Publication Date
- 2025-12-09
- Estimated Expiration
- 2034-11-06
AI Technical Summary
Existing solar decorative lights have a monotonous structure, poor aesthetics and decorative effect, cannot meet the decorative needs of different environments, and consume a lot of electricity.
Design a solar-powered hanging lamp that includes multiple luminous decorative parts. The luminous decorative parts are connected in series by wires to form a straight decorative strip and are connected to a solar circuit box. The circuit box includes a rhomboid box body, a battery, a circuit board, and a photovoltaic module. The outer shell of the luminous decorative parts can be in the shape of solid geometry, animals, or plants. The LED light source is set inside the shell. The solar circuit box at the bottom is unobstructed and provides sufficient power.
It achieves a reasonable structure, good decorative effect, and strong visual appeal. The luminous decorative parts can be replaced at will, the bottom circuit box absorbs enough light, and it emits light continuously at night, providing multi-angle color changes to meet the decorative needs of different environments.
Smart Images

Figure CN223649201U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of lighting technology, and in particular to a solar-powered hanging lamp. Background Technology
[0002] Traditional lighting fixtures are not only used for illumination but also for beautifying the environment and creating atmosphere; these are what people call lamps. Lamps can be divided into indoor and outdoor lamps depending on their application, and their installation and use differ. Outdoor lamps generally use incandescent or energy-saving bulbs powered by mains electricity, requiring pre-installed cables to the lamp mounting point. Often, the limited wiring restricts the lamp's position. Furthermore, using incandescent or energy-saving bulbs results in high power consumption and is not energy-efficient. Solar decorative lights have emerged to address this issue. However, existing solar decorative lights have a monotonous structure and poor aesthetics and appeal. For example, Chinese patent document CN201320405901.X discloses a solar decorative light comprising a lamp frame and a lamp body. The lamp body includes a lampshade and a battery box, on which a solar panel is mounted. The lamp frame has a central hollow section with a fixing ring for securing the lamp body. As people's living standards improve, their demands for quality of life also increase. This type of simple solar decorative light has poor landscape optimization and decoration effects and cannot improve the atmosphere of the environment. Different environments require different decorative effects, such as the poor decorative effects of existing sun umbrellas on swimming pools and beaches. Utility Model Content
[0003] Therefore, in view of the above problems, this utility model proposes a solar hanging lamp with a reasonable structure, which improves the decoration of outdoor leisure areas such as parasols, has a good decorative effect, and is highly ornamental.
[0004] To solve this technical problem, the present invention adopts the following solution: a solar hanging lamp, including a solar circuit box, and multiple light-emitting decorative parts. Each light-emitting decorative part includes a shell and an LED light source disposed inside the shell. The LED light sources of each light-emitting decorative part are connected in series through a set of wires passing through the shells of each light-emitting decorative part, and the light-emitting decorative parts are connected in series to form a straight decorative strip. One end of the straight decorative strip has a hanging part at the free end of the light-emitting decorative part. The connecting wire of the light-emitting decorative part at the other end of the straight decorative strip passes through the shell of the light-emitting decorative part and passes through the solar circuit box to connect with the output terminal of the circuit board inside the solar circuit box.
[0005] In a further improvement, the solar circuit box includes a rhombus-shaped box body, a battery, a circuit board, a switch, and two sets of solar photovoltaic modules. The upper part of the rhombus-shaped box body is thinner than the lower part. The two sets of solar photovoltaic modules are respectively located on opposite sides of the vertical direction of the rhombus-shaped box body. The battery and the circuit board are both located inside the rhombus-shaped box body. Both sets of solar photovoltaic modules are connected to the battery to charge the battery. The battery supplies power to the circuit board. The switch passes through the rhombus-shaped box body and is connected to the input terminal of the circuit board.
[0006] Further improvements include designing the outer shell of each luminous decorative element into one of the following shapes: a three-dimensional geometric shape, an animal shape, a plant shape, or a landscape shape.
[0007] In a further improvement, the outer shell of each luminous decorative part is a lampshade, and LED light sources are fixed in the four parts of the shell, which are located at the top, bottom, left and right. Wires are inserted into the shell and connected in series with each LED light source.
[0008] By adopting the aforementioned technical solution, the beneficial effects of this utility model are as follows: By connecting multiple luminous decorative parts in series to form a straight decorative strip, and then fixing the solar circuit box to the bottom of the straight decorative strip, the product of this utility model can be hung on outdoor brackets or outdoor sunshades of sun umbrellas or beaches. The solar circuit box at the bottom will not be blocked and can absorb light and convert it into electrical energy. This allows existing outdoor brackets or outdoor sunshades of sun umbrellas or beaches to be effectively decorated and beautified, eliminating the need for mains power at night. Furthermore, the hanging method of this utility model allows users to easily replace different luminous decorative parts to decorate the environment, thus enhancing the overall aesthetic. With a better atmosphere and reasonable structure, this product enhances the decoration of outdoor leisure areas such as parasols, providing excellent decorative effects and strong visual appeal. The outer shell of the luminous decorative section is designed with three-dimensional geometric shapes, animal shapes, plant shapes, or landscape shapes, giving users more choices for matching. The diamond-shaped box structure of the solar circuit, combined with the structural design of two sets of solar photovoltaic modules, ensures sufficient conversion circuitry and effectively guarantees the continuous lighting of the luminous decorative section at night. The outer shell of each luminous decorative section is a lampshade, and LED light sources are fixed in four parts inside the shell, allowing the entire luminous decorative section to be equipped with multiple colored lights to display different colors from multiple angles, providing visual appeal and making it widely applicable. Attached Figure Description
[0009] Figure 1 This is a three-dimensional structural schematic diagram of an embodiment of the present utility model;
[0010] Figure 2 This is a partial structural schematic diagram of the light-emitting decorative part according to an embodiment of the present utility model;
[0011] Figure 3 This is a schematic diagram of the structure of the solar circuit box according to an embodiment of the present invention. Detailed Implementation
[0012] The present invention will now be further described in conjunction with the accompanying drawings and specific embodiments.
[0013] refer to Figures 1-3 The preferred embodiment of this utility model of a solar-powered hanging lamp includes a solar circuit box 1 and multiple luminous decorative parts 2. Each luminous decorative part 2 includes a housing 21 and an LED light source 22 disposed within the housing 21. The housing 21 of each luminous decorative part 2 is a lampshade, and LED light sources 22 are fixedly disposed in four positions (top, bottom, left, and right) within the housing 21. The housing 21 of each luminous decorative part 2 is a semi-transparent plastic shell. The LED light sources 22 of each luminous decorative part 2 are connected in series via a set of wires 3 passing through the housing 21 of each luminous decorative part 2, thus connecting the luminous decorative parts 2 in series to form a straight decorative strip. A hanging part 4 is provided at the free end of one end of the straight decorative strip, and a hanging part 4 is provided at the other end of the straight decorative strip. The connecting wire 3 of 2 passes through the outer shell of the light-emitting decorative part 2 and enters the solar circuit box 1 to connect with the output terminal of the circuit board inside the solar circuit box 1. The solar circuit box 1 includes a rhombus-shaped box 11, a battery, a circuit board, a switch 12, and two sets of solar photovoltaic modules 13. The upper part of the rhombus-shaped box 11 is thinner than the lower part. The two sets of solar photovoltaic modules 13 are respectively arranged on opposite sides of the vertical direction of the rhombus-shaped box 11. The battery and the circuit board are both arranged inside the rhombus-shaped box 11. Both sets of solar photovoltaic modules 13 are connected to the battery to charge the battery. The battery supplies power to the circuit board. The switch 12 passes through the rhombus-shaped box 11 and is connected to the input terminal of the circuit board.
[0014] In the above embodiments, the outer shell of the luminous decorative part can also be one of other animal, plant, or landscape shapes. The outer shell of the luminous decorative part can also be a transparent plastic lampshade or other transparent lampshade.
[0015] Although the present invention has been specifically shown and described in conjunction with preferred embodiments, those skilled in the art should understand that various changes in form and detail may be made to the present invention without departing from the spirit and scope of the present invention as defined in the appended claims, and all such changes shall be within the scope of protection of the present invention.
Claims
1. A solar-powered hanging light, comprising a solar circuit box, characterized in that: It also includes multiple luminous decorative parts, each of which includes a housing and an LED light source located inside the housing. The LED light sources of each luminous decorative part are connected in series through a set of wires passing through the housing of each luminous decorative part, and the luminous decorative parts are connected in series to form a straight decorative strip. One end of the straight decorative strip has a hanging part at the free end of the luminous decorative part. The connecting wire of the luminous decorative part at the other end of the straight decorative strip passes through the housing of the luminous decorative part and passes through the solar circuit box to connect with the output terminal of the circuit board inside the solar circuit box.
2. The solar-powered hanging lamp according to claim 1, characterized in that: The solar circuit box includes a rhombus-shaped box, a battery, a circuit board, a switch, and two sets of solar photovoltaic modules. The upper part of the rhombus-shaped box is thinner than the lower part. The two sets of solar photovoltaic modules are respectively located on opposite sides of the vertical direction of the rhombus-shaped box. The battery and the circuit board are both located inside the rhombus-shaped box. Both sets of solar photovoltaic modules are connected to the battery to charge the battery. The battery supplies power to the circuit board. The switch passes through the rhombus-shaped box and is connected to the input terminal of the circuit board.
3. The solar-powered hanging lamp according to claim 1, characterized in that: Each luminous decorative part has a lampshade as its outer shell, and LED light sources are fixed in four parts inside the shell, on the top, bottom, left, and right. Wires are inserted into the shell and connected in series with each LED light source.
Citation Information
Patent Citations
Solar decorative lamp
CN203363954U